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25 April 2022 | Story Elsabé Brits
Andre Roodt and Alice Brink
Prof Andreas Roodt and Prof Alice Brink are two of the inventors of the ‘Multinuclear complexes and their preparation patent.

According to the World Health Organisation (WHO), cancer is a leading cause of death worldwide, accounting for nearly 10 million deaths in 2020, or nearly one in six. The most common cancers are breast, lung, colon, rectum, and prostate cancers. There is a constant need to provide methods to diagnose and treat cancer-related tumours.  Current research strategies focus on eliminating cancer cells with the minimum damage to surrounding healthy cells.

A limitation of current technologies is that they are mostly based on the separate identification of cancer (diagnostic), followed by treatment (therapy) using chemotherapy and/or radiotherapy. To fit both needs at the same time and with similar or identical compounds, the principle of theranostic medicine was identified. This concept employs both diagnosing (by imaging) cancer and delivering therapy (treatment) simultaneously, which has been receiving increased attention internationally.

Collaborating with the University of Zurich
A University of the Free State (UFS) team, together with a team from the University of Zürich, conducted exciting research in this area and filed a patent titled ‘Multinuclear complexes and their preparation’. The patent was granted in South Africa and by the European Patent Office. It is being validated in selected European countries. The patent is pending in the USA, Japan, Hong Kong, and India. The inventors from the UFS are Prof Andreas Roodt, Prof Alice Brink, Dr Pennie Mokolokolo, and Dr Vincent Dumisani Kama. The approach that their technology takes is to enable the synthesis of a multinuclear compound/s, which may contain different pre-selected radioisotopes, to allow both imaging and therapy to the cancer site(s) with one and the same metal-organic complex.

So far, high-yield production of compounds has been successfully innovated, which contain both an imaging (in particular the widely utilised imaging isotope Technetium-99m) and therapeutic (typically the therapeutic isotope Rhenium-186) radioactive isotope(s), optionally carrying an additional cytotoxic agent. (Chemotherapy uses anti-cancer [cytotoxic] drugs to destroy cancer cells.)

Nuclear medicine technologies
In the next phase of the research, a lead compound portfolio of four to five model pharmaceuticals containing these metal nuclides with appropriate directing groups to target cancer sites will be designed and constructed. A number of these entities are known and can be introduced through different techniques. These will then undergo full characterisation and efficacy evaluation in biological models (in vitro), followed by extensive animal and human trials.

The technology will be delivered as a product or service in the way that current nuclear medicine technologies are delivered.

The fact that this product(s) contains both imaging and therapeutic radionuclides or cytotoxic modalities, enables detailed tracking of the pharmaceutical and monitoring of the tumours' response to the therapy. Not directly related to the patent, but an asset to it, is the fact that the incorporation of rhenium with a high atomic number (Z = 75) opens the additional opportunity to utilise the multinuclear compounds also as radiosensitisers. Synergistic effects, enhancing the therapeutic efficacy, can thus be expected in combination with radiotherapy.

The UFS would like to partner with a pharmaceutical company working in the field of nuclear medicine to commercialise this technology. Interested parties can contact Ravini Moodley at MoodleyR5@ufs.ac.za

News Archive

HIV Cure – Just another fantasy?
2016-07-27

Description: HIV Cure – Just another fantasy? Tags: HIV Cure – Just another fantasy?

Dr Dominique Goedhals, Prof John Frater,
Dr Thabiso Mofokeng and Dr Jacob Jansen van Vuuren,
attended the lecture. Prof Frater has been working in
collaboration with the UFS Department of Internal
Medicine on HIV resistance and HIV immunology
since 2007.

Photo: Nonsindiso Qwabe

Twenty-years ago, after a person had been diagnosed with HIV, their lifespan did not exceed three years, but thanks to the success of antiretroviral therapy programmes, life expectancy has risen by an average of ten years. However, is antiretroviral therapy always going to be for life? This is the societal issue that Professor John Frater, addressed in his talk at the University of the Free State. He is an MRC Senior Clinical Fellow, Associate Professor and Honorary Consultant Physician in Infectious Diseases at  Oxford University.

Antiretroviral medicine therapeutic

The discovery of antiretroviral therapy - the use of HIV medicines to treat the virus - has had a positive effect on the health and well-being of people living with it, improving their quality of life. Unfortunately, if treatment is stopped, HIV rebounds to the detriment of the patient. Now, research has shown that some patients, who are treated soon after being infected by HIV, may go off treatment for prolonged periods. Work is being done to predict who will be able to stop treatment.

“The difference made by starting treatment earlier is enormous. Delaying treatment is denying yourself the right to health,” Professor Frater says. However, this does not mean that the virus is cured. “A person can live for ten years without being on HIV treatment, but is that enough?” he went on to ask.

Healthy lifestyles encouraged

The National Department of Health will adopt a test and treat immediately strategy later this year to improve patient health and curb the spread of HIV. ,This is another reason why everybody should know their status and start treatment as soon as possible.

Search for a cure continues

More research is being conducted to establish whether HIV can be eradicated. Remission gives hope that a permanent cure may be found eventually. “Will a cure for HIV ever be found? Time will tell,” he concluded.

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